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评估白色念珠菌中复合物 I(CI)线粒体亚基蛋白的功能。

Assessing Complex I (CI) Mitochondrial Subunit Protein Functions in Candida albicans.

机构信息

Department of Microbiology and Immunology, Georgetown University Medical Center, Washington, DC, USA.

Institute of Dermatology, Chinese Academy of Medical Sciences (CAMS), Jiangsu Key Laboratory of Molecular Biology for Skin Disease and STIs, Nanjing, China.

出版信息

Methods Mol Biol. 2022;2542:151-160. doi: 10.1007/978-1-0716-2549-1_11.

Abstract

Mitochondria of Candida species play critical roles in cell metabolism and pathogenesis. Greater emphasis in specific mitochondria activities of this fungus have been revealed through studies that defined fungal or Candida-specific subunit proteins of ETC Complexes I, III, and IV (CI, CIII, and CIV). Functional activities of these subunits have been characterized through the construction of single-gene null mutants. Activities common to mitochondria of most eukaryotes include their importance in metabolism, ATP synthesis, oxidative phosphorylation, oxygen consumption, and redox potential. An important difference among specific subunits compared to eukaryotic species is the role of CI fungal-specific subunit proteins in activities specific to Candida albicans, such as cell wall synthesis, especially cell wall mannan and β-glucan synthesis. We have associated cell wall synthesis with a signal transduction pathway that includes a Chk1p fungal-specific pathway. Recently, based upon the specificity of CI subunit specificities, a suggestion is the development of novel antifungals that target mitochondrial activity.

摘要

酵母菌的线粒体在细胞代谢和发病机制中起着关键作用。通过研究定义了 ETC 复合物 I、III 和 IV(CI、CIII 和 CIV)中的真菌或酵母菌特异性亚基蛋白,对该真菌的特定线粒体活性的重视程度有所提高。通过构建单基因缺失突变体,这些亚基的功能活性得到了表征。这些亚基的共同功能包括在代谢、ATP 合成、氧化磷酸化、耗氧量和氧化还原电位中的重要性。与大多数真核生物的线粒体相比,特定亚基的一个重要区别是 CI 真菌特异性亚基蛋白在与白色念珠菌特有的活动中的作用,如细胞壁合成,特别是细胞壁甘露聚糖和β-葡聚糖合成。我们已经将细胞壁合成与包括 Chk1p 真菌特异性途径在内的信号转导途径联系起来。最近,基于 CI 亚基特异性的特异性,有人提出开发针对线粒体活性的新型抗真菌药物。

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